Infectious Diseases Division, Alpert Medical School of Brown University, Providence, RI, United States.
Front Cell Infect Microbiol. 2022 Jul 22;12:898794. doi: 10.3389/fcimb.2022.898794. eCollection 2022.
The formation of persister cells is associated with recalcitrance and infections. In this study, we examined the antimicrobial property of alpha mangostin, a natural xanthone molecule, against methicillin-resistant (MRSA) persisters and biofilm. The MIC of alpha mangostin against MRSA persisters was 2 µg/ml, and activity was mediated by causing membrane permeabilization within 30 min of exposure. The membrane activity of alpha mangostin was further studied by fast-killing kinetics of MRSA persiste r cells and found that the compound exhibited 99.99% bactericidal activity within 30 min. Furthermore, alpha mangostin disrupted established MRSA biofilms and inhibited bacterial attachment as biofilm formation. Alpha mangostin down-regulated genes associated with the formation of persister cells and biofilms, such as , , , , and , ranging from 2 to 4-folds. Alpha mangostin at 16 μg/ml was non-toxic (> 95% cell survival) to liver-derived HepG2 and lung-derived A549 cells, similarly. Still, alpha mangostin exhibited 50% cell lysis of human RBC at 16 μg/ml. Interestingly, alpha mangostin was effective at increasing the survival up to 75% (<0.0001) of larvae infected with MRSA persister for 120 h. In conclusion, we report that alpha mangostin is active against MRSA persisters and biofilms, and these data further our understanding of the antistaphylococcal activity and toxicity of this natural compound.
生物被膜相关持久性细胞的形成与抗药性和感染有关。在这项研究中,我们检测了天然呫吨酮分子 α-倒捻子素对耐甲氧西林金黄色葡萄球菌(MRSA)持久性细胞和生物被膜的抗菌特性。α-倒捻子素对 MRSA 持久性细胞的 MIC 为 2 µg/ml,其活性是通过在接触 30 分钟内引起细胞膜通透性来介导的。进一步通过快速杀灭动力学研究了 α-倒捻子素对 MRSA 持久性细胞的膜活性,发现该化合物在 30 分钟内表现出 99.99%的杀菌活性。此外,α-倒捻子素破坏了已建立的 MRSA 生物被膜,并抑制了细菌附着和生物膜形成。α-倒捻子素下调了与持久性细胞和生物膜形成相关的基因,如 、 、 、 、和 ,下调幅度为 2 到 4 倍。α-倒捻子素在 16 μg/ml 时对来源于肝的 HepG2 和肺的 A549 细胞没有毒性(>95%细胞存活率)。然而,α-倒捻子素在 16 μg/ml 时对人 RBC 的细胞溶解率为 50%。有趣的是,α-倒捻子素在增加存活率方面有效,在 120 小时内使感染 MRSA 持久性细胞的幼虫存活率提高了 75%(<0.0001)。总之,我们报告称 α-倒捻子素对 MRSA 持久性细胞和生物被膜具有活性,这些数据进一步加深了我们对这种天然化合物的抗葡萄球菌活性和毒性的理解。